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Breakup of Surfactant-Laden Drops in Pressure-Driven Flow through Square channels

机译:通过方形通道的压力驱动流中充满表面活性剂的液滴破裂

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摘要

We present the results of an experimental investigation of the deformation and breakup of surfactant-laden viscous drops translating through a square channel. The critical conditions for the onset of drop breakup, as well as the modes of breakup, are examined. The experiments are performed for different surfactant concentrations in order to identify the effect of surfactants on the breakup mechanisms identified earlier1 for surfactant-free systems. These mechanisms include transient stretching, propagation of capillary waves along the interface, formation of a re-entrant cavity at the trailing end of the drop that evolves into a jet of suspending fluid penetrating the drop, and tail-streaming wherein the drop develops a pointed tail which emits a stream of very small droplets. In most cases, the presence of surfactant is found to accelerate the onset of drop breakup. Namely, surfactant-bearing drops are found to break up at smaller critical capillary numbers compared to their surfactant-free counterparts.
机译:我们提出了通过方形通道平移的表面活性剂负载的粘性液滴的变形和破裂的实验研究结果。检查了液滴破裂开始的临界条件以及破裂的模式。对不同浓度的表面活性剂进行了实验,以确定表面活性剂对较早发现的无表面活性剂体系分解机理的影响。这些机制包括瞬时拉伸,沿界面的毛细波传播,在液滴尾端形成凹腔,该凹腔演变成悬浮液射流穿透液滴,以及尾流,其中液滴形成尖角。尾巴发出非常小的液滴流。在大多数情况下,发现表面活性剂的存在会加速液滴破裂的发生。即,与不含表面活性剂的对应物相比,发现具有表面活性剂的液滴在较小的临界毛细管数下破裂。

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